← 返回
基于高次谐波复合转子的无刷双馈电机用于变速恒频风力发电
A High-Order-Harmonic Compound-Rotor Based Brushless Doubly-Fed Machine for Variable Speed Constant Frequency Wind Power Generation
| 作者 | Mingyuan Jiang · Shuangxia Niu · Ching Chuen Chan |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年5月 |
| 技术分类 | 风电变流技术 |
| 技术标签 | 储能系统 有限元仿真 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 无刷双馈电机 变速恒频 高阶谐波调制 转矩性能 节能 |
语言:
中文摘要
针对风力发电系统中变速恒频运行下无刷双馈电机(BLDFM)转矩性能较差的问题,提出一种新型无刷双电端口双机械端口双馈电机(BLDD-DFM)结构,采用高次谐波调制以降低控制绕组在变速恒频应用中的能耗。该设计通过复合外转子增强内气隙磁动势中的三次谐波分量,有效降低转差率,使控制绕组能耗较传统结构减少三分之二。额定工况下,外转子与内转子输出转矩分别提升23.03%和144.08%。有限元分析及对比研究验证了所提电机的有效性,样机实验进一步证明其可行性与优势。
English Abstract
This article addresses the issue of relatively inferior torque performance in brushless doubly fed machines (BLDFMs) used for variable speed constant frequency (VSCF) operation in wind power generation systems. To mitigate this limitation, a novel brushless dual-electrical-port dual-mechanical-port DFM (BLDD-DFM) structure is proposed, which employs high-order harmonic modulation to reduce energy consumption in the control winding during VSCF applications. The compound outer rotor is designed specifically to enhance the third-harmonic component within the inner airgap’s magnetomotive force (MMF). By implementing high-order harmonic modulation, the slip ratio is reduced, resulting in a threefold decrease in energy consumption compared to conventional designs. Additionally, under rated conditions, the proposed design exhibits maximum torque improvements of 23.03% for the outer rotor torque and 144.08% for the inner rotor torque compared to the conventional design. Finite element analysis and comparative studies with existing counterparts validate the effectiveness of the proposed machine. Furthermore, a prototype is presented to demonstrate the feasibility and advantages of the proposed design.
S
SunView 深度解读
该高次谐波复合转子BLDD-DFM技术对阳光电源风电变流器和储能系统具有重要参考价值。其高次谐波调制降低控制绕组能耗的方法,可应用于ST系列储能变流器的功率变换优化,有助于提升系统效率。复合外转子结构提升转矩性能的创新思路,对公司风电变流器产品线的电机控制算法优化具有启发。特别是在变速恒频应用场景下,该技术可与PowerTitan储能系统的GFM/GFL控制相结合,提升系统并网性能。建议在下一代风储一体化产品中考虑采用类似的高效电机拓扑结构,以实现更优的系统性能。